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Major contribution of neutral clusters to new particle formation at the interface between the boundary layer and the free troposphere

机译:中性簇对边界层与自由层之间的界面的新粒子形成的主要贡献

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The formation of new aerosol particles in the atmosphere is a key process influencing the aerosol number concentration as well as the climate, in particular at high altitude, where the newly formed particles directly influence cloud formation. However, free tropospheric new particle formation (NPF) is poorly documented due to logistic limitations and complex atmospheric dynamics around high-altitude stations that make the observation of this day-time process challenging. Recent improvements in measurement techniques make now possible the detection of neutral clusters down to ~ 1 nm sizes, which opens new horizons in our understanding of the nucleation process. Indeed, only the charged fraction of clusters has been reported in the upper troposphere up to now. Here we report day-time concentrations of charged and neutral clusters (1 to 2.5 nm mobility diameter) recorded at the interface between the boundary layer (BL) and the FT as well as in the FT at the altitude site of Puy de D?me (1465 m a.s.l.), central France, between 10 and 29 February 2012. Our findings demonstrate that in the FT, and especially at the interface between the BL and the FT, the formation of 1.5 nm neutral clusters significantly exceeds the one of ionic clusters during NPF events, clearly indicating that they dominate in the nucleation process. We also observe that the total cluster concentration significantly increases during NPF events compared to the other days, which was not clearly observed for the charged cluster population in the past. During the studied period, the nucleation process does not seem to be sulfuric acid-limited and could be promoted by the transport of pollutants to the upper troposphere, coupled with low temperatures.
机译:在大气中形成新的气溶胶颗粒是影响气溶胶数浓度以及气候,特别是在高海拔的关键过程,其中新形成的颗粒直接影响云层。然而,由于高空站周围的物流局限和复杂的大气动力学,自由的对流层新的粒子形成(NPF)尚未记录,这使得观察到这一日期过程挑战。现在,测量技术的最新改进现在可以检测到下降至约1nm尺寸的中性簇,这在我们对核心过程的理解中打开了新的视野。实际上,只有在上层对流层中仅报告了簇的带电分数。在这里,我们报告了在边界层(BL)和FT之间的接口处的带电和中性簇(1至2.5nm移动式直径)的日期时间浓度以及Puy de d的高度站点的FT (1465米ASL),法国中部,2012年2月10日至29日。我们的研究结果表明,在FT,特别是在BL和FT之间的界面处,形成1.5nm中性簇显着超过离子簇之一在NPF事件中,清楚地表明它们在成核过程中占主导地位。我们还观察到,与其他日期相比,NPF事件中的总集群浓度显着增加,这对于过去的收费集群群体没有明确观察。在研究期间,成核过程似乎似乎似乎是硫酸 - 限制,并且可以通过污染物的运输到上层对流层的运输,与低温相结合。

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